YAP/TAZ activity is regulated by a complex network of signals that include the Hippo pathway, cell polarity complexes, and signaling receptors of the RTK, GPCR, and WNT pathways and by a seamlessly expanding number of intracellular cues including energy and mevalonate metabolism. Among these inputs, we here concentrate on mechanical cues embedded in the extracellular matrix (ECM) microenvironment, which are key regulators of YAP/TAZ activity. We review the techniques that have been used to study mechano-regulation of YAP/TAZ, including conceptual and practical considerations on how these experiments should be designed and controlled. Finally, we briefly review the most appropriate techniques to monitor YAP/TAZ activity in these experiments ...
Hippo effectors YAP/TAZ act as on–off mechanosensing switches by sensing modifications inextracellul...
The Hippo pathway has emerged as a major eukaryotic signalling pathway and is increasingly the subje...
Regulation of F-actin dynamics is key for multiple aspects of cell biology. Recent work indicates th...
Signalling from the extracellular matrix (ECM) is a fundamental cellular input that sustains prolife...
The physical and mechanical properties of the cellular microenvironment regulate cell shape and can ...
Cells perceive their microenvironment not only through soluble signals but also through physical and...
Cells perceive their microenvironment not only through soluble signals but also through physical and...
Cells perceive their microenvironment not only through soluble signals but also in term of physical ...
AbstractOrgan size is controlled by the concerted action of biochemical and physical processes. Alth...
To perceive their three-dimensional environment, cells and tissues must be able to sense and interpr...
Abstract Yes-associated protein (YAP) and its paralog WW domain containing transcription regulator 1...
Yes-associated protein (YAP) and WW domain-containing transcription regulator protein 1 (WWTR1, also...
International audienceSkeletal muscle is not only translating chemical energy into mechanical work, ...
The Hippo-YAP pathway regulates organ size by modulating cell proliferation and apoptosis. Yu et al....
YAP and TAZ play a fundamental role in oncogenic transformation, organ development, stem cell amplif...
Hippo effectors YAP/TAZ act as on–off mechanosensing switches by sensing modifications inextracellul...
The Hippo pathway has emerged as a major eukaryotic signalling pathway and is increasingly the subje...
Regulation of F-actin dynamics is key for multiple aspects of cell biology. Recent work indicates th...
Signalling from the extracellular matrix (ECM) is a fundamental cellular input that sustains prolife...
The physical and mechanical properties of the cellular microenvironment regulate cell shape and can ...
Cells perceive their microenvironment not only through soluble signals but also through physical and...
Cells perceive their microenvironment not only through soluble signals but also through physical and...
Cells perceive their microenvironment not only through soluble signals but also in term of physical ...
AbstractOrgan size is controlled by the concerted action of biochemical and physical processes. Alth...
To perceive their three-dimensional environment, cells and tissues must be able to sense and interpr...
Abstract Yes-associated protein (YAP) and its paralog WW domain containing transcription regulator 1...
Yes-associated protein (YAP) and WW domain-containing transcription regulator protein 1 (WWTR1, also...
International audienceSkeletal muscle is not only translating chemical energy into mechanical work, ...
The Hippo-YAP pathway regulates organ size by modulating cell proliferation and apoptosis. Yu et al....
YAP and TAZ play a fundamental role in oncogenic transformation, organ development, stem cell amplif...
Hippo effectors YAP/TAZ act as on–off mechanosensing switches by sensing modifications inextracellul...
The Hippo pathway has emerged as a major eukaryotic signalling pathway and is increasingly the subje...
Regulation of F-actin dynamics is key for multiple aspects of cell biology. Recent work indicates th...